Illustration of distinct nuclear radiation transmission factors combined with physical and elastic characteristics of barium boro-bismuthate glasses

For B2O3-Bi2O3-BaO glass system, γ, proton, alpha, electron, and neutron radiation shielding aspects were examined. Adopting Phy-X/PSD software, mass attenuation coefficients (μ/ρ) have been derived, and such μ/ρ quantities are in good unanimity with evaluated FLUKA, Geant4, and MCNPX codes correspo...

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Autores principales: G. Lakshminarayana, Ashok Kumar, H.O. Tekin, Shams A.M. Issa, M.S. Al-Buriahi, M.G. Dong, Dong-Eun Lee, Jonghun Yoon, Taejoon Park
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Publicado: Elsevier 2021
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spelling oai:doaj.org-article:f26da60fb41d40cb8addaf7d8e64242e2021-12-02T05:01:18ZIllustration of distinct nuclear radiation transmission factors combined with physical and elastic characteristics of barium boro-bismuthate glasses2211-379710.1016/j.rinp.2021.105067https://doaj.org/article/f26da60fb41d40cb8addaf7d8e64242e2021-12-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2211379721010524https://doaj.org/toc/2211-3797For B2O3-Bi2O3-BaO glass system, γ, proton, alpha, electron, and neutron radiation shielding aspects were examined. Adopting Phy-X/PSD software, mass attenuation coefficients (μ/ρ) have been derived, and such μ/ρ quantities are in good unanimity with evaluated FLUKA, Geant4, and MCNPX codes corresponding μ/ρ end products. Equivalent atomic number and up to 40 mfp ‘buildup factors’ (utilizing G–P fitting procedure) were reckoned at ten distinct penetration depths. Deduced radiation protection efficiency values validated all glasses’ laudable absorption potential for the minimal energy photons. At 15–15 × 103 KeV kinetic energy range, alpha particle and proton mass stopping powers and projected ranges by SRIM code including electron mass stopping power using ESTAR database were evaluated. For fast neutrons, the calculated macroscopic effective removal cross-section (ΣR) reveals that 25B2O3-70Bi2O3-5BaO (mol%) sample owns proportionately larger ΣR (=0.1206 cm–1). 70B2O3-15Bi2O3-15BaO (mol%) glass exhibits the largest total cross-section for thermal neutron absorption. Further, various physical features and elastic (Young’s, bulk, shear, and longitudinal) moduli and Poisson’s ratio values were derived for all samples. Both BC (bond compression) and M-M (Makishima–Mackenzie) models have been utilized for elastic aspects evaluation, and such features are altered considerably with Bi2O3 increment in the studied glasses. By BC and M-M models, obtained Poisson’s ratio is varied at 0.2434 – 0.2749 and 0.2384 – 0.2826 ranges respectively.G. LakshminarayanaAshok KumarH.O. TekinShams A.M. IssaM.S. Al-BuriahiM.G. DongDong-Eun LeeJonghun YoonTaejoon ParkElsevierarticleB2O3-Bi2O3-BaO glassγ−, α, e−, proton, and neutron radiationPhy-X/PSD softwareFLUKA codePhysical characteristicsMechanical traitsPhysicsQC1-999ENResults in Physics, Vol 31, Iss , Pp 105067- (2021)
institution DOAJ
collection DOAJ
language EN
topic B2O3-Bi2O3-BaO glass
γ−, α, e−, proton, and neutron radiation
Phy-X/PSD software
FLUKA code
Physical characteristics
Mechanical traits
Physics
QC1-999
spellingShingle B2O3-Bi2O3-BaO glass
γ−, α, e−, proton, and neutron radiation
Phy-X/PSD software
FLUKA code
Physical characteristics
Mechanical traits
Physics
QC1-999
G. Lakshminarayana
Ashok Kumar
H.O. Tekin
Shams A.M. Issa
M.S. Al-Buriahi
M.G. Dong
Dong-Eun Lee
Jonghun Yoon
Taejoon Park
Illustration of distinct nuclear radiation transmission factors combined with physical and elastic characteristics of barium boro-bismuthate glasses
description For B2O3-Bi2O3-BaO glass system, γ, proton, alpha, electron, and neutron radiation shielding aspects were examined. Adopting Phy-X/PSD software, mass attenuation coefficients (μ/ρ) have been derived, and such μ/ρ quantities are in good unanimity with evaluated FLUKA, Geant4, and MCNPX codes corresponding μ/ρ end products. Equivalent atomic number and up to 40 mfp ‘buildup factors’ (utilizing G–P fitting procedure) were reckoned at ten distinct penetration depths. Deduced radiation protection efficiency values validated all glasses’ laudable absorption potential for the minimal energy photons. At 15–15 × 103 KeV kinetic energy range, alpha particle and proton mass stopping powers and projected ranges by SRIM code including electron mass stopping power using ESTAR database were evaluated. For fast neutrons, the calculated macroscopic effective removal cross-section (ΣR) reveals that 25B2O3-70Bi2O3-5BaO (mol%) sample owns proportionately larger ΣR (=0.1206 cm–1). 70B2O3-15Bi2O3-15BaO (mol%) glass exhibits the largest total cross-section for thermal neutron absorption. Further, various physical features and elastic (Young’s, bulk, shear, and longitudinal) moduli and Poisson’s ratio values were derived for all samples. Both BC (bond compression) and M-M (Makishima–Mackenzie) models have been utilized for elastic aspects evaluation, and such features are altered considerably with Bi2O3 increment in the studied glasses. By BC and M-M models, obtained Poisson’s ratio is varied at 0.2434 – 0.2749 and 0.2384 – 0.2826 ranges respectively.
format article
author G. Lakshminarayana
Ashok Kumar
H.O. Tekin
Shams A.M. Issa
M.S. Al-Buriahi
M.G. Dong
Dong-Eun Lee
Jonghun Yoon
Taejoon Park
author_facet G. Lakshminarayana
Ashok Kumar
H.O. Tekin
Shams A.M. Issa
M.S. Al-Buriahi
M.G. Dong
Dong-Eun Lee
Jonghun Yoon
Taejoon Park
author_sort G. Lakshminarayana
title Illustration of distinct nuclear radiation transmission factors combined with physical and elastic characteristics of barium boro-bismuthate glasses
title_short Illustration of distinct nuclear radiation transmission factors combined with physical and elastic characteristics of barium boro-bismuthate glasses
title_full Illustration of distinct nuclear radiation transmission factors combined with physical and elastic characteristics of barium boro-bismuthate glasses
title_fullStr Illustration of distinct nuclear radiation transmission factors combined with physical and elastic characteristics of barium boro-bismuthate glasses
title_full_unstemmed Illustration of distinct nuclear radiation transmission factors combined with physical and elastic characteristics of barium boro-bismuthate glasses
title_sort illustration of distinct nuclear radiation transmission factors combined with physical and elastic characteristics of barium boro-bismuthate glasses
publisher Elsevier
publishDate 2021
url https://doaj.org/article/f26da60fb41d40cb8addaf7d8e64242e
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